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ELM triggering conditions for the integrated modeling of H-mode plasmas
A. Y. Pankin
, G. Bateman
, D. P. Brennan
, D. D. Schnack
, P. B. Snyder
, I. Voitsekhovitch
, A. H. Kritz
, S. Kruger
, G. Janeschitz
, T. Onjun
, G. W. Pacher
, H. D. Pacher
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Scopus citations
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Keyphrases
H-mode Plasmas
100%
Trigger Delay
100%
Integrated Modeling
100%
H-mode Pedestal
100%
ELM Triggering
100%
Transport Code
66%
L-mode
66%
Astra
66%
Peeling-ballooning
66%
Ideal MHD Stability
66%
Pressure Gradient
33%
MHD Stability
33%
Recent Advances
33%
Turbulence
33%
Thermal Transport
33%
DIII-D
33%
Current Density
33%
Ion Temperature Gradient Mode
33%
H-mode
33%
Plasma Edge
33%
Flow Shear
33%
Crash
33%
Direct Results
33%
Ballooning Modes
33%
Balloon
33%
Anomalous Transport
33%
MHD Instability
33%
Trapped Electron Mode
33%
ELMy H-mode
33%
L-H Transition
33%
Tokamak Discharge
33%
Resistive MHD
33%
B-flow
33%
Nimrod
33%
Edge Current
33%
Resistive Ballooning Mode
33%
Electron Temperature Gradient Mode
33%
Integrated Transport
33%
Parametric Expression
33%
Physics
Magnetohydrodynamic Generator
100%
Ballooning Modes
50%
Temperature Gradients
50%
Electron Energy
25%
Pressure Gradient
25%
Tokamak Device
25%
Shear Flow
25%
Ion Temperature
25%